Département de Physiologie, Institut de Génie Biomédical, Université de Montréal, Montreal, Quebec, Canada.
J Cereb Blood Flow Metab. 2013 Jul;33(7):1066-74. doi: 10.1038/jcbfm.2013.48. Epub 2013 Apr 10.
Stimulation of cerebral vasculature using hypercapnia has been widely used to study cerebral vascular reactivity (CVR), which can be expressed as the quantitative change in cerebral blood flow (CBF) per mm Hg change in end-tidal partial pressure of CO2 (PETCO2). We investigate whether different respiratory manipulations, with arterial spin labeling used to measure CBF, lead to consistent measures of CVR. The approaches included: (1) an automated system delivering variable concentrations of inspired CO2 for prospective targeting of PETCO2, (2) administration of a fixed concentration of CO2 leading to subject-dependent changes in PETCO2, (3) a breath-hold (BH) paradigm with physiologic modeling of CO2 accumulation, and (4) a maneuver combining breath-hold and hyperventilation. When CVR was expressed as the percent change in CBF per mm Hg change in PETCO2, methods 1 to 3 gave consistent results. The CVR values using method 4 were significantly lower. When CVR was expressed in terms of the absolute change in CBF (mL/100 g per minute per mm Hg), greater discrepancies became apparent: methods 2 and 3 gave lower absolute CVR values compared with method 1, and the value obtained with method 4 was dramatically lower. Our findings indicate that care must be taken to ensure that CVR is measured over the linear range of the CBF-CO2 dose-response curve, avoiding hypocapnic conditions.
使用高碳酸血症刺激脑血管已被广泛用于研究脑血管反应性(CVR),其可以表示为每毫米汞柱二氧化碳分压(PETCO2)变化时脑血流(CBF)的定量变化。我们研究了使用动脉自旋标记测量 CBF 的不同呼吸操作是否会导致一致的 CVR 测量值。这些方法包括:(1)使用自动系统输送可变浓度的吸入 CO2,以预测 PETCO2 的目标值;(2)给予固定浓度的 CO2,导致 PETCO2 随个体变化;(3)采用屏气(BH)范式,对 CO2 积累进行生理建模;(4)结合屏气和过度通气的操作。当 CVR 表示为 PETCO2 每毫米汞柱变化时 CBF 的百分比变化时,方法 1 至 3 给出了一致的结果。使用方法 4 时,CVR 值明显较低。当 CVR 以 CBF 的绝对变化(每 100 克每分钟每毫米汞柱的毫升数)表示时,差异变得更加明显:与方法 1 相比,方法 2 和 3 给出了较低的绝对 CVR 值,而方法 4 得到的值则明显降低。我们的研究结果表明,必须注意确保 CVR 在 CBF-CO2 剂量反应曲线的线性范围内进行测量,避免低碳酸血症条件。